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Cupriavidus necator

  • Microbial Cell Biology
    Kinetic Studies of Polyhydroxybutyrate Granule Formation in Wautersia eutropha H16 by Transmission Electron Microscopy
    Jiamin Tian, Anthony J. Sinskey, JoAnne Stubbe
  • Microbial Cell Biology
    Analysis of Transient Polyhydroxybutyrate Production in Wautersia eutropha H16 by Quantitative Western Analysis and Transmission Electron Microscopy
    Jiamin Tian, Aimin He, Adam G. Lawrence, Pinghua Liu, Nicki Watson, Anthony J. Sinskey, JoAnne Stubbe
  • ENZYMES AND PROTEINS
    The Soluble NAD+-Reducing [NiFe]-Hydrogenase from Ralstonia eutropha H16 Consists of Six Subunits and Can Be Specifically Activated by NADPH
    Tanja Burgdorf, Eddy van der Linden, Michael Bernhard, Qing Yuan Yin, Jaap W. Back, Aloysius F. Hartog, Anton O. Muijsers, Chris G. de Koster, Simon P. J. Albracht, Bärbel Friedrich
  • PHYSIOLOGY AND METABOLISM
    Ralstonia eutropha H16 Encodes Two and Possibly Three Intracellular Poly[d-(−)-3-Hydroxybutyrate] Depolymerase Genes
    Gregory M. York, Joachim Lupberger, Jiamin Tian, Adam G. Lawrence, JoAnne Stubbe, Anthony J. Sinskey
  • ENZYMES AND PROTEINS
    Purification and Properties of an Intracellular 3-Hydroxybutyrate-Oligomer Hydrolase (PhaZ2) in Ralstonia eutropha H16 and Its Identification as a Novel Intracellular Poly(3-Hydroxybutyrate) Depolymerase
    Teruyuki Kobayashi, Mari Shiraki, Tomoko Abe, Akinori Sugiyama, Terumi Saito
  • PHYSIOLOGY AND METABOLISM
    Efficient Turnover of Chlorocatechols Is Essential for Growth of Ralstonia eutropha JMP134(pJP4) in 3-Chlorobenzoic Acid
    D. Pérez-Pantoja, T. Ledger, D. H. Pieper, B. González
  • ENZYMES AND PROTEINS
    Functional Analysis by Site-Directed Mutagenesis of the NAD+-Reducing Hydrogenase from Ralstonia eutropha
    Tanja Burgdorf, Antonio L. De Lacey, Bärbel Friedrich
  • ENZYMES AND PROTEINS
    Formation of Protoanemonin from 2-Chloro-cis,cis-Muconate by the Combined Action of Muconate Cycloisomerase and Muconolactone Isomerase
    Anke Skiba, Volker Hecht, Dietmar Helmut Pieper
  • PHYSIOLOGY AND METABOLISM
    Carbonic Anhydrase Is Essential for Growth of Ralstonia eutropha at Ambient CO2 Concentrations
    Bernhard Kusian, Dieter Sültemeyer, Botho Bowien
  • GUEST COMMENTARY
    Two Chlorocatechol Catabolic Gene Modules on Plasmid pJP4
    Michael Schlömann

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